Jun S, Wallen R V, Goriely A, Kalionis B, Desplan C
Howard Hughes Medical Institute, The Rockefeller University, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 1998 Nov 10;95(23):13720-5. doi: 10.1073/pnas.95.23.13720.
Pax proteins, characterized by the presence of a paired domain, play key regulatory roles during development. The paired domain is a bipartite DNA-binding domain that contains two helix-turn-helix domains joined by a linker region. Each of the subdomains, the PAI and RED domains, has been shown to be a distinct DNA-binding domain. The PAI domain is the most critical, but in specific circumstances, the RED domain is involved in DNA recognition. We describe a Pax protein, originally called Lune, that is the product of the Drosophila eye gone gene (eyg). It is unique among Pax proteins, because it contains only the RED domain. eyg seems to play a role both in the organogenesis of the salivary gland during embryogenesis and in the development of the eye. A high-affinity binding site for the Eyg RED domain was identified by using systematic evolution of ligands by exponential enrichment techniques. This binding site is related to a binding site previously identified for the RED domain of the Pax-6 5a isoform. Eyg also contains another DNA-binding domain, a Prd-class homeodomain (HD), whose palindromic binding site is similar to other Prd-class HDs. The ability of Pax proteins to use the PAI, RED, and HD, or combinations thereof, may be one mechanism that allows them to be used at different stages of development to regulate various developmental processes through the activation of specific target genes.
帕克斯蛋白以含有配对结构域为特征,在发育过程中发挥关键的调控作用。配对结构域是一种二分DNA结合结构域,包含两个由连接区相连的螺旋-转角-螺旋结构域。每个亚结构域,即PAI结构域和RED结构域,都已被证明是一个独特的DNA结合结构域。PAI结构域最为关键,但在特定情况下,RED结构域也参与DNA识别。我们描述了一种最初被称为Lune的帕克斯蛋白,它是果蝇眼缺失基因(eyg)的产物。它在帕克斯蛋白中是独特的,因为它只包含RED结构域。eyg似乎在胚胎发育期间唾液腺的器官发生以及眼睛的发育中都发挥作用。通过指数富集技术进行配体的系统进化,鉴定出了Eyg RED结构域的一个高亲和力结合位点。这个结合位点与先前为Pax-6 5a异构体的RED结构域鉴定出的结合位点相关。Eyg还包含另一个DNA结合结构域,一个Prd类同源异型结构域(HD),其回文结合位点与其他Prd类HD相似。帕克斯蛋白利用PAI、RED和HD或它们的组合的能力,可能是一种机制,使它们能够在发育的不同阶段通过激活特定靶基因来调控各种发育过程。